猴V1视觉信息加工的胆碱能和血清素能调节

Satoshi Shimegi , Akihiro Kimura , Akinori Sato , Chisa Aoyama , Ryo Mizuyama , Keisuke Tsunoda , Fuyuki Ueda , Sera Araki , Ryoma Goya , Hiromichi Sato
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引用次数: 27

摘要

为了优化信息处理,大脑会根据行为状态和环境动态地改变其输入输出关系。在分子水平上,胆碱能/单胺能递质作为脑功能状态/情境依赖性调节的关键参与者被广泛研究。本文从解剖学和体内电生理的角度,综述了具有高度分化层流结构的猕猴初级视觉皮层(V1)中5 -羟色胺和胆碱能系统是如何优化视觉信息加工的。我们发现这两个系统在轴突纤维支配和受体分布方面具有相似的层偏性。常见的目标部位是基因受体层和基因皮质纤维,其中通过基因皮质信号变换建立适当的增益控制。这两种系统都发挥活动依赖的跨层反应增益控制,但其方式与受体亚型一致。5-羟色胺能受体5-HT1B和5HT2A以一种与双向反应增益控制一致的方式调节对比-反应曲线,其中符号(促进/抑制)根据放电速率切换,并与另一个互补。另一方面,胆碱能烟碱/毒蕈碱受体施加单向反应增益控制而没有信号逆转。烟碱受体以倍增的方式增加反应幅度,而毒蕈碱受体同时发挥抑制和促进作用。我们在发达的层流结构的基础上讨论了两种神经调节系统在V1分层视觉信号处理中的意义。
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Cholinergic and serotonergic modulation of visual information processing in monkey V1

The brain dynamically changes its input-output relationship depending on the behavioral state and context in order to optimize information processing. At the molecular level, cholinergic/monoaminergic transmitters have been extensively studied as key players for the state/context-dependent modulation of brain function. In this paper, we review how cortical visual information processing in the primary visual cortex (V1) of macaque monkey, which has a highly differentiated laminar structure, is optimized by serotonergic and cholinergic systems by examining anatomical and in vivo electrophysiological aspects to highlight their similarities and distinctions. We show that these two systems have a similar layer bias for axonal fiber innervation and receptor distribution. The common target sites are the geniculorecipient layers and geniculocortical fibers, where the appropriate gain control is established through a geniculocortical signal transformation. Both systems exert activity-dependent response gain control across layers, but in a manner consistent with the receptor subtype. The serotonergic receptors 5-HT1B and 5HT2A modulate the contrast-response curve in a manner consistent with bi-directional response gain control, where the sign (facilitation/suppression) is switched according to the firing rate and is complementary to the other. On the other hand, cholinergic nicotinic/muscarinic receptors exert mono-directional response gain control without a sign reversal. Nicotinic receptors increase the response magnitude in a multiplicative manner, while muscarinic receptors exert both suppressive and facilitative effects. We discuss the implications of the two neuromodulator systems in hierarchical visual signal processing in V1 on the basis of the developed laminar structure.

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来源期刊
Journal of Physiology-Paris
Journal of Physiology-Paris 医学-神经科学
CiteScore
2.02
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Each issue of the Journal of Physiology (Paris) is specially commissioned, and provides an overview of one important area of neuroscience, delivering review and research papers from leading researchers in that field. The content will interest both those specializing in the experimental study of the brain and those working in interdisciplinary fields linking theory and biological data, including cellular neuroscience, mathematical analysis of brain function, computational neuroscience, biophysics of brain imaging and cognitive psychology.
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